IP Library Granted Patent US 12,726,062
Granted Patent B2
US 12,726,062 · App. 18/400,968 · Granted Sep 1, 2026

Cooling system, stator assembly, and axial magnetic field motor

Inventors: Guangquan Zhang (Shanghai, CN); Lei Tang (Shanghai, CN); Liang Peng (Shanghai, CN)
Assignee: SHANGHAI PANGOOD POWER TECHNOLOGY CO., LTD
H02K1/2795H02K1/20H02K5/203H02K9/19H02K9/197
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Quick Facts
Patent No.
US 12,726,062
App. No.
18/400,968
Granted
Sep 1, 2026
Kind
B2
Abstract

A cooling system includes a housing. A bottom of the housing has an installation position for installing a stator iron core. The cooling system further includes: an oil inlet cavity and an oil return cavity, an oil inlet and an oil outlet provided on an outer wall of the housing, an oil spraying hole and an oil return hole provided on an inner wall of the housing, and a plurality of oil diverting grooves provided at the bottom of the housing. The oil diverting grooves penetrate through the installation position. A stator component includes a stator iron core and the cooling system. An axial magnetic field motor includes the stator component.

Claims (23)

1 . A cooling system, comprising a housing, wherein a bottom of the housing has an installation position for installing a stator iron core; the cooling system further comprises:

an oil inlet cavity and an oil return cavity, which are provided in the housing; an oil inlet and an oil outlet, which are provided on an outer wall of the housing, wherein the oil inlet is communicated with the oil inlet cavity, and the oil outlet is communicated with the oil return cavity;

an oil spraying hole and an oil return hole, which are provided on an inner wall of the housing, wherein the oil spraying hole is communicated with the oil inlet cavity, and the oil return hole is communicated with the oil return cavity; and

a plurality of oil diverting grooves provided at the bottom of the housing, wherein the oil diverting grooves penetrate through the installation position.

2 . The cooling system according to claim 1 , wherein the number of the housing is plural, two adjacent housings of the plurality of housings comprise a front housing and a rear housing, and the oil outlet of the front housing is communicated with the oil inlet of the rear housing.

3 . The cooling system according to claim 2 , wherein the oil inlet of the front housing is arranged coaxially with the oil outlet of the rear housing.

4 . A stator component, comprising a stator iron core and the cooling system according to claim 1 , wherein the stator iron core is provided on an installation position of the housing of the cooling system; an outer ring of the stator iron core and the housing define a first cooling space, and an inner ring of the stator iron core and the housing define a second cooling space.

5 . The stator component according to claim 4 , wherein a spoiler for separating the first cooling space is further provided between the housing and the stator iron core.

6 . The stator component according to claim 5 , wherein the number of the spoiler is two, the two spoilers are arranged symmetrically, the two spoilers separate the first cooling space into a first cooling area and a second cooling area, wherein the first cooling area is communicated with the oil inlet cavity through the oil spraying hole, and the second cooling area is communicated with the oil outlet cavity through the oil return hole.

7 . The stator component according to claim 6 , wherein the stator iron core is enclosed, by a sealing cover plate, in a space defined by the housing and the sealing cover plate.

8 . The stator component according to claim 4 , wherein the stator iron core comprises a plurality of teeth, and a number of the oil diverting grooves equals to a number of the teeth of the stator iron core.

9 . The stator component according to claim 8 , wherein the oil diverting grooves correspond to teeth grooves of the stator iron core.

10 . An axial magnetic field motor, comprising the stator component according to claim 4 .

11 . A stator component comprising a housing, a stator iron core, a coil, a pole shoe, and a stator cover plate, wherein the stator iron core, the coil and the pole shoe are provided in a space defined by the housing and the stator cover plate; the coil is provided in an open slot of the stator iron core, wherein the pole shoe is fixed on the stator cover plate, and when the stator cover plate is butted with the housing, the pole shoe can be arranged at a notch of the open slot; an outer ring of the stator iron core and the housing define a first cooling space, and an inner ring of the stator iron core and the housing define a second cooling space communicating with the first cooling space; a housing wall of the housing is provided with an oil inlet cavity and an oil return cavity, and an outer wall of the housing is provided with an oil inlet and an oil outlet; wherein the oil inlet is communicated with the oil inlet cavity, and the oil outlet is communicated with the oil return cavity; an inner wall of the housing is provided with an oil spraying hole and an oil return hole, and the first cooling space and the oil inlet cavity are communicated with each other through the oil spraying hole, and the first cooling space and the oil return cavity are communicated with each other through the oil return hole.

12 . The stator component according to claim 11 , wherein the stator cover plate is fixed on the housing by screws, pressing plate, welding, riveting, or dovetailing.

13 . The stator component according to claim 12 , wherein an end surface, close to the stator iron core, of the stator cover plate is provided with a groove rib extending in a radial direction of the stator cover plate and an iron core tooth groove corresponding to the stator iron core.

14 . The stator component according to claim 13 , wherein the number of the groove rib is equal to the number of the open slot of the stator iron core, and the pole shoe is provided on two sides of each groove rib.

15 . The stator component according to claim 13 , wherein the pole shoe extends along a length direction of the stator cover plate, and in a radial direction of the stator cover plate, the length of the pole shoe is the same as the length of the notch of the open slot.

16 . The stator component according to claim 13 , wherein a sum of widths of the groove rib and the pole shoe located on the two sides of the groove rib equals to a width of the notch of the open slot.

17 . The stator component according to claim 16 , wherein the pole shoe is made of SMC.

18 . The stator component according to claim 11 , wherein the stator cover plate is made of non-magnetic conductive high-strength glass fiber composite material or high-strength plastic.

19 . The stator component according to claim 11 , wherein the coil is a formed coil.

20 . An axial magnetic field motor, comprising the stator component according to claim 11 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2026
From: ZHANG, GUANGQUAN; TANG, LEI; PENG, LIANG
To: SHANGHAI PANGOOD POWER TECHNOLOGY CO., LTD.
Reel/Frame 074679/0009 →
Priority Claims (5)
CN 201910031452.9 · Jan 14, 2019 · national
CN 201910031465.6 · Jan 14, 2019 · national
CN 201910031826.7 · Jan 14, 2019 · national
CN 201910208603.3 · Mar 19, 2019 · national
CN 201910208629.8 · Mar 19, 2019 · national
Continuity (3)
Continuation 17422424 · Dec 27, 2019
Related Publication 20240136876A1 · Apr 25, 2024
Related Publication 20240235298A9 · Jul 11, 2024
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